1) micro detonation cord
微爆索
1.
Experimental study and finite element analysis of linear cutting aerial PMMA using micro detonation cord;
微爆索线性切割航空有机玻璃的实验研究和有限元分析
2) MDC cutting
微爆索切割
1.
According to cutting test study of Polymethyl Methacrylate(PMMA),the phenomenon of spallation in PMMA due to MDC cutting is observed.
设计了一系列微型爆破索,通过微爆索切割航空有机玻璃的实验研究,观测了有机玻璃层裂现象,得到了不同参数对有机玻璃破坏深度和破坏影响区的影响,确定了微爆索应采用的外壳材料、炸药类型、装药量的范围等参数。
3) miniature detonating cord(MDC) (used for emergency ejection)
微型爆破索
4) Micro explosion
微爆
1.
Micro explosion of a LO_2 vacuum pipe and solutions;
液氧真空管道微爆及处理
2.
The micro explosion mechanisms of O/ W and W/O emulsified heavy oils were described.
包括油包水型乳化重油和水包油型乳化重油各自的微爆机理,掺水量对乳化重油粘度的影响,乳化重油粘度与温度间的关系,掺水量对乳化重油稳定性的影响,掺水量对热效率及烟气温度的影响,掺水量与节油率的关系以及乳化剂的选择和研制。
3.
An general model of the micro explosion of emulsified droplets,suitable for oil in water(O/W) and water in oil(W/O) is presented.
关于乳化油的微爆在以往的文献中提出过各种计算模型 ,对油包水与水包油两种乳化油的微爆有不同看法。
5) Microexplosion
微爆
1.
Observations show that there exist phenomena of periodic expansion and contraction and microexplosion for LP1846 drops in a range of 120  ̄ 160℃.
含能液滴在高温下特征行为的研究余永刚,金志明(南京理工大学动力工程学院南京210094)关键词液体推进剂,液滴燃烧,微爆1前言“目前,超高速推进技术的研究在一些工业发达国家已形成热点。
2.
Both theoretical and experimental research of microexplosion of emulsified fuels dropletare included in this paper.
本文分析了微爆研究中存在的问题,分别用实验与理论方法研究了乳化油滴的微爆规律。
3.
Based on the theoretical analysis and experimental results, a new mathematicalmodel-partial mixed and multi-step evaporation model, which is about the microexplosionof single droplet of emulsified fuels, is put forward in this paper.
在理论分析与实验研究的基础上,本文提出了一个新的分析单个乳化油滴微爆的理论模型-局部混合分阶段蒸发模型,反映了实际油滴内混合的过程,较好地解释了“冷滴”、“无水边界层”等实验现象,为进一步进行微爆的预报与分析影响微爆的因素打下了基础。
6) micro-explosion
微爆
1.
Recent experiental advances in combustion and micro-explosion of emulsified oil;
乳化油燃烧与微爆实验研究的现状
2.
Study of Micro-explosion of Multi-component Spray Under High Pressure High Temperature Conditions;
多组元液雾在高温高压气体中微爆过程的研究
3.
Laser holographic photograph technique and high-speed digital camera were respectively used to observe the instant and entire process of micro-explosion phenomenon,which occurred in the diesel,methanol and water emulsion spray at high temperature and high pressure(3.
1 MPa)环境中发生微爆现象的瞬间和全过程,证实了微爆现象的存在。
补充资料:索微
1.研求深奥玄妙的道理。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条